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      Pinching parameters for open (super) strings

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          Abstract

          We present an approach to the parametrization of (super) Schottky space obtained by sewing together three-punctured discs with strips. Different cubic ribbon graphs classify distinct sets of pinching parameters; we show how they are mapped onto each other. The parametrization is particularly well-suited to describing the region within (super) moduli space where open bosonic or Neveu-Schwarz string propagators become very long and thin, which dominates the IR behaviour of string theories. We show how worldsheet objects such as the Green's function converge to graph theoretic objects such as the Symanzik polynomials in the \(\alpha ' \to 0\) limit, allowing us to see how string theory reproduces the sum over Feynman graphs. The (super) string measure takes on a simple and elegant form when expressed in terms of these parameters.

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          Efficient calculation of one-loop QCD amplitudes

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            One-Loop Corrections to Five-Gluon Amplitudes

            We present the one-loop helicity amplitudes with five external gluons. The computation employs string-based methods, new techniques for performing tensor integrals, and improvements in the spinor helicity method.
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              A proof that Witten's open string theory gives a single cover of moduli space

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                Author and article information

                Journal
                28 September 2017
                Article
                1709.10117
                5d1f1383-7b96-40a8-ae24-1259d6031c89

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                68 pages, 31 figures
                hep-th

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